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首页> 外文期刊>BMC Genomics >Identification of microRNAs associated with the exogenous spermidine-mediated improvement of high-temperature tolerance in cucumber seedlings ( Cucumis sativus L.)
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Identification of microRNAs associated with the exogenous spermidine-mediated improvement of high-temperature tolerance in cucumber seedlings ( Cucumis sativus L.)

机译:鉴定与外源亚精胺介导的黄瓜幼苗高温耐受性改善相关的microRNA。

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High-temperature stress inhibited the growth of cucumber seedlings. Foliar spraying of 1.0?mmol·L??1 exogenous spermidine (Spd) to the sensitive cucumber cultivar ‘Jinchun No. 2’ grown at high-temperature (42?°C/32?°C) in an artificial climate box improved the high-temperature tolerance. Although there have been many reports on the response of microRNAs (miRNAs) to high-temperature stress, the mechanism by which exogenous Spd may mitigate the damage of high-temperature stress through miRNA-mediated regulation has not been studied. To elucidate the regulation of miRNAs in response to exogenous Spd-mediated improvement of high-temperature tolerance, four small RNA libraries were constructed from cucumber leaves and sequenced: untreated-control (CW), Spd-treated (CS), high-temperature stress (HW), and Spd-treated and high-temperature stress (HS). As a result, 107 known miRNAs and 79 novel miRNAs were identified. Eight common differentially expressed miRNAs (miR156d-3p, miR170-5p, miR2275-5p, miR394a, miR479b, miR5077, miR5222 and miR6475) were observed in CS/CW, HW/CW, HS/CW and HS/HW comparison pairs, which were the first set of miRNAs that responded to not only high-temperature stress but also exogenous Spd in cucumber seedlings. Five of the eight miRNAs were predicted to target 107 potential genes. Gene function and pathway analyses highlighted the integral role that these miRNAs and target genes probably play in the improvement of the high-temperature tolerance of cucumber seedlings through exogenous Spd application. Our study identified the first set of miRNAs associated with the exogenous Spd-mediated improvement of high-temperature tolerance in cucumber seedlings. The results could help to promote further studies on the complex molecular mechanisms underlying high-temperature tolerance in cucumber and provide a theoretical basis for the high-quality and efficient cultivation of cucumber with high-temperature resistance.
机译:高温胁迫抑制了黄瓜幼苗的生长。在人工气候箱中,向高温(42℃/ 32℃)下生长的敏感黄瓜品种“金春2号”叶面喷洒1.0?mmol·L?? 1的外源亚精胺(Spd)改善了黄瓜的品质。耐高温。尽管有许多关于microRNA(miRNA)对高温胁迫的反应的报道,但尚未研究外源Spd通过miRNA介导的调节减轻高温胁迫的损害的机制。为了阐明针对外源Spd介导的高温耐受性提高而对miRNA的调控,从黄瓜叶片上构建了四个小RNA库并进行了测序:未经处理的对照(CW),经Spd处理的(CS),高温胁迫(HW),以及经过Spd处理的高温应力(HS)。结果,鉴定出107种已知的miRNA和79种新颖的miRNA。在CS / CW,HW / CW,HS / CW和HS / HW比较对中观察到八个常见的差异表达的miRNA(miR156d-3p,miR170-5p,miR2275-5p,miR394a,miR479b,miR5077,miR5222和miR6475)。是第一组不仅能响应高温胁迫而且还能响应黄瓜幼苗中外源Spd的miRNA。预计八个miRNA中的五个靶向107个潜在基因。基因功能和途径分析突出了这些miRNA和靶基因可能通过外源Spd改善黄瓜幼苗的耐高温性所起的不可或缺的作用。我们的研究确定了第一组与外源Spd介导的黄瓜幼苗耐高温性改善相关的miRNA。研究结果有助于进一步研究黄瓜高温耐受性的复杂分子机制,为黄瓜优质高效栽培抗高温提供理论依据。

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